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Publication : Dysregulated skin barrier function in Tmem79 mutant mice promotes IL-17A-dependent spontaneous skin and lung inflammation.

First Author  Saunders SP Year  2020
Journal  Allergy PubMed ID  32644214
Mgi Jnum  J:290038 Mgi Id  MGI:6441360
Doi  10.1111/ALL.14488 Citation  Saunders SP, et al. (2020) Dysregulated skin barrier function in Tmem79 mutant mice promotes IL-17A-dependent spontaneous skin and lung inflammation. Allergy
abstractText  BACKGROUND: Atopic dermatitis (AD) is associated with a dysregulation of the skin barrier and may predispose to the development of secondary allergic conditions, such as asthma. Tmem79(ma/ma) mice harbor mutations in the gene encoding Transmembrane Protein 79 (or Mattrin), which have previously been associated with AD. As a result of the Tmem79 gene mutation, these mice have a defective skin barrier and develop spontaneous skin inflammation. In this study Tmem79(ma/ma) mice were assessed for the underlying immunological response in the development of spontaneous skin and lung inflammation. METHODS: Development of spontaneous skin and lung inflammation in Tmem79(ma/ma) mice was analysed. We further investigated susceptibility to cutaneous Staphylococcus aureus infection. Tmem79(ma/ma) were crossed to IL-17A-deficient mice to address the contribution of IL-17A to spontaneous skin and lung disease. RESULTS: Tmem79(ma/ma) mice developed IL-17A-dependent spontaneous AD-like inflammation, and were refractory to S. aureus infection. Mutant mice progressed to airway inflammation subsequent to the occurrence of dermatitis. The progression from skin to lung disease is dependent on adaptive immunity and is facilitated by cutaneous expansion of Th17 and TCRgammadelta T cells. CONCLUSION: Mice lacking Tmem79/Mattrin expression have a defective skin barrier. In adulthood, these mice develop dermatitis with secondary progression to lung inflammation. The development of skin and lung inflammation is IL-17A-dependent and mediated by TCRgammadelta T cells.
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